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首页> 外文期刊>Archives of pharmacal research >Micromeritics and release behaviours of cellulose acetate butyrate microspheres containing theophylline prepared by emulsion solvent evaporation and emulsion non-solvent addition method.
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Micromeritics and release behaviours of cellulose acetate butyrate microspheres containing theophylline prepared by emulsion solvent evaporation and emulsion non-solvent addition method.

机译:乳液溶剂蒸发和乳液非溶剂加成法制备的含茶碱的醋酸丁酸纤维素微球的微胶束和释放行为。

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摘要

The present research work compares the effect of microsphere preparation technique on micromeritics and release behaviors of theophylline microspheres. Microspheres were prepared by oil-in oil (O(1)/O(2)) emulsion solvent evaporation method (ESE) using different ratios of anhydrous theophylline to cellulose acetate butyrate (CAB). Cyclohexane was used as non-solvent to modify the ESE technique (MESE method) and the effect of non-solvent volume on properties of microspheres was investigated. The obtained microspheres were analyzed in terms of drug content, particle size and encapsulation efficiency. The morphology of microsphere was studied using scanning electron microscope. The solid state of microspheres, theophylline and CAB were investigated using X-ray, FT-IR and DSC. The drug content of microspheres prepared by MESE method was significantly lower (15.54% +/- 0.46) than microspheres prepared by ESE method (41.08 +/- 0.40%). The results showed that as the amount of cyclohexane was increased from 2 mL to 6 mL the drug content of microspheres was increased from 15.54% to 28.71%. Higher encapsulation efficiencies were obtained for microspheres prepared by ESE method (95.87%) in comparison with MESE method (64.71%). Mean particle size of microsphere prepared by ESE method was not remarkably affected by drug to polymer ratio, whereas in MSES method when the volume of cyclohexane was increased the mean particle size of microsphere was significantly decreased. The ratio of drug to polymer significantly changed the rate of drug release from microspheres and the highest drug release was obtained for the microsphere with high drug to polymer ratio. The amount of cyclohexane did not significantly change the drug release. Although, x-ray showed a small change in crystallinity of theophylline in microspheres, DSC results proved that theophylline in microspheres is in amorphous state. No major chemical interaction between the drug and polymer was reported during the encapsulation process.
机译:本研究工作比较了微球制备技术对茶碱微球的微球蛋白和释放行为的影响。微球通过油包油(O(1)/ O(2))乳液溶剂蒸发法(ESE)使用无水茶碱与乙酸丁酸纤维素(CAB)的不同比例制备。以环己烷为非溶剂改进了ESE技术(MESE方法),研究了非溶剂体积对微球性能的影响。根据药物含量,粒度和包封效率对获得的微球进行了分析。用扫描电子显微镜研究了微球的形态。使用X射线,FT-IR和DSC研究了微球,茶碱和CAB的固态。通过MESE方法制备的微球的药物含量明显低于通过ESE方法制备的微球的药物含量(41.08 +/- 0.40%)(15.54%+ /-0.46)。结果表明,随着环己烷量从2 mL增加到6 mL,微球的药物含量从15.54%增加到28.71%。与MESE法(64.71%)相比,通过ESE法制备的微球的包封效率(95.87%)更高。通过ESE方法制备的微球的平均粒径不受药物与聚合物的比例的显着影响,而在MSES方法中,当环己烷的体积增加时,微球的平均粒径显着减小。药物与聚合物的比例显着改变了药物从微球中释放的速率,对于药物与聚合物比率高的微球,药物释放率最高。环己烷的量没有显着改变药物释放。尽管X射线显示茶碱在微球中的结晶度变化很小,但是DSC结果证明茶碱在微球中处于非晶态。在封装过程中,没有发现药物与聚合物之间的主要化学相互作用。

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